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Expression of constitutively active Raf-1 in the mitochondria restores antiapoptotic and leukemogenic potential of a transformation-deficient BCR/ABL mutant.

Publication ,  Journal Article
Salomoni, P; Wasik, MA; Riedel, RF; Reiss, K; Choi, JK; Skorski, T; Calabretta, B
Published in: J Exp Med
June 15, 1998

The oncogenic BCR/ABL protein protects hematopoietic cells from apoptosis induced by growth factor deprivation, but the mechanisms are only partially understood. A BCR/ABL mutant lacking amino acids 176-426 in the BCR domain (p185DeltaBCR) failed to protect interleukin 3-deprived 32Dcl3 myeloid precursor cells from apoptosis, although it possessed tyrosine kinase activity and was capable of activating the Ras-Raf-MAP kinase pathway. Compared to p185 wild-type transfectants, p185DeltaBCR-transfected cells showed markedly reduced levels of Bcl-2 and expressed the hypophosphorylated, proapoptotic form of BAD. Bcl-2 expression in the mitochondrial fraction of p185DeltaBCR cells was also markedly diminished and mitochondrial RAF was undetectable. In p185DeltaBCR cells transfected with a mitochondria-targeted, constitutively active RAF (M-Raf) BAD was expressed in the hyperphosphorylated form and released from the mitochondria into the cytosol. p185DeltaBCR/M-Raf-transfected cells were completely resistant to apoptosis induced by growth factor deprivation in vitro. Moreover, constitutive expression of dominant-negative M-Raf (K375W) enhanced the susceptibility of 32Dcl3 cells expressing wild-type BCR/ABL to apoptosis. In severe combined immunodeficiency (SCID) mice, p185DeltaBCR/M-Raf double transfectants were leukemogenic, whereas cells expressing only p185DeltaBCR showed no leukemogenic potential. Together, these data support the existence of a BCR/ABL-dependent pathway that leads to expression of an active RAF in the mitochondria and promotes antiapoptotic and leukemia-inducing effects of BCR/ABL.

Duke Scholars

Published In

J Exp Med

DOI

ISSN

0022-1007

Publication Date

June 15, 1998

Volume

187

Issue

12

Start / End Page

1995 / 2007

Location

United States

Related Subject Headings

  • ras Proteins
  • Signal Transduction
  • Proto-Oncogene Proteins c-raf
  • Oncogenes
  • Mutation
  • Mitochondria
  • Mice
  • Leukemia, Experimental
  • Interleukin-3
  • Immunology
 

Citation

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Salomoni, P., Wasik, M. A., Riedel, R. F., Reiss, K., Choi, J. K., Skorski, T., & Calabretta, B. (1998). Expression of constitutively active Raf-1 in the mitochondria restores antiapoptotic and leukemogenic potential of a transformation-deficient BCR/ABL mutant. J Exp Med, 187(12), 1995–2007. https://doi.org/10.1084/jem.187.12.1995
Salomoni, P., M. A. Wasik, R. F. Riedel, K. Reiss, J. K. Choi, T. Skorski, and B. Calabretta. “Expression of constitutively active Raf-1 in the mitochondria restores antiapoptotic and leukemogenic potential of a transformation-deficient BCR/ABL mutant.J Exp Med 187, no. 12 (June 15, 1998): 1995–2007. https://doi.org/10.1084/jem.187.12.1995.
Salomoni P, Wasik MA, Riedel RF, Reiss K, Choi JK, Skorski T, et al. Expression of constitutively active Raf-1 in the mitochondria restores antiapoptotic and leukemogenic potential of a transformation-deficient BCR/ABL mutant. J Exp Med. 1998 Jun 15;187(12):1995–2007.
Salomoni, P., et al. “Expression of constitutively active Raf-1 in the mitochondria restores antiapoptotic and leukemogenic potential of a transformation-deficient BCR/ABL mutant.J Exp Med, vol. 187, no. 12, June 1998, pp. 1995–2007. Pubmed, doi:10.1084/jem.187.12.1995.
Salomoni P, Wasik MA, Riedel RF, Reiss K, Choi JK, Skorski T, Calabretta B. Expression of constitutively active Raf-1 in the mitochondria restores antiapoptotic and leukemogenic potential of a transformation-deficient BCR/ABL mutant. J Exp Med. 1998 Jun 15;187(12):1995–2007.

Published In

J Exp Med

DOI

ISSN

0022-1007

Publication Date

June 15, 1998

Volume

187

Issue

12

Start / End Page

1995 / 2007

Location

United States

Related Subject Headings

  • ras Proteins
  • Signal Transduction
  • Proto-Oncogene Proteins c-raf
  • Oncogenes
  • Mutation
  • Mitochondria
  • Mice
  • Leukemia, Experimental
  • Interleukin-3
  • Immunology